Forward dijet production at the LHC within an impact parameter dependent TMD approach
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[1] R. Venugopalan,et al. Back-to-back inclusive dijets in DIS at small $x$: Complete NLO results and predictions , 2023, 2308.00022.
[2] S. Sapeta,et al. Searching for saturation in forward dijet production at the LHC , 2023, The European Physical Journal C.
[3] John R. Terry,et al. QCD resummation of dijet azimuthal decorrelations in pp and pA collisions , 2023, Journal of High Energy Physics.
[4] N. Armesto,et al. Probing quark transverse momentum distributions in the color glass condensate: Quark-gluon dijets in deep inelastic scattering at next-to-eikonal accuracy , 2023, Physical Review D.
[5] P. Mechelen,et al. Dijet azimuthal correlations in p-p and p-Pb collisions at forward LHC calorimeters , 2022, Journal of High Energy Physics.
[6] R. Venugopalan,et al. Back-to-back inclusive dijets in DIS at small x: Sudakov suppression and gluon saturation at NLO , 2022, Journal of High Energy Physics.
[7] R. Bellwied,et al. Snowmass 2021/22 Letter of Interest: A Forward Calorimeter at the LHC , 2022, 2208.13541.
[8] A. Morreale,et al. Mining for Gluon Saturation at Colliders , 2021, Universe.
[9] R. Venugopalan,et al. Dijet impact factor in DIS at next-to-leading order in the Color Glass Condensate , 2021, Journal of High Energy Physics.
[10] H. Mäntysaari,et al. The importance of kinematic twists and genuine saturation effects in dijet production at the Electron-Ion Collider , 2021, Journal of High Energy Physics.
[11] C. Collaboration,et al. The very forward CASTOR calorimeter of the CMS experiment , 2020, 2011.01185.
[12] H. Fujii,et al. Comparison of improved TMD and CGC frameworks in forward quark dijet production , 2020, Journal of High Energy Physics.
[13] J. Huston,et al. New CTEQ global analysis of quantum chromodynamics with high-precision data from the LHC , 2019, 1912.10053.
[14] H. Mäntysaari,et al. Multigluon Correlations and Evidence of Saturation from Dijet Measurements at an Electron-Ion Collider. , 2019, Physical review letters.
[15] H. Mantysaari,et al. In depth analysis of the combined HERA data in the dipole models with and without saturation , 2018, Physical Review D.
[16] Z. A. Ibrahim,et al. Combination and QCD analysis of charm and beauty production cross-section measurements in deep inelastic ep scattering at HERA , 2018, Proceedings of The 39th International Conference on High Energy Physics — PoS(ICHEP2018).
[17] C. Marquet,et al. Transverse-momentum-dependent gluon distributions from JIMWLK evolution , 2016, 1608.02577.
[18] S. Sapeta,et al. Forward di-jet production in p+Pb collisions in the small-x improved TMD factorization framework , 2016, 1607.03121.
[19] R. Venugopalan,et al. Tracing the origin of azimuthal gluon correlations in the color glass condensate , 2015, Journal of High Energy Physics.
[20] S. Sapeta,et al. Improved TMD factorization for forward dijet production in dilute-dense hadronic collisions , 2015, 1503.03421.
[21] T. Lappi,et al. Single inclusive particle production at high energy from HERA data to proton-nucleus collisions , 2013, 1309.6963.
[22] M. Klundert,et al. IP-Sat: Impact-Parameter dependent Saturation model; revised , 2013, 1307.0165.
[23] M. Klundert,et al. Analysis of combined HERA data in the impact-parameter dependent saturation model , 2012, 1212.2974.
[24] B. Xiao,et al. Sudakov resummation in the small-x saturation formalism. , 2012, Physical review letters.
[25] T. Lappi,et al. Forward dihadron correlations in deuteron–gold collisions with a Gaussian approximation of JIMWLK , 2012, 1209.2853.
[26] J. Albacete,et al. CGC predictions for p + Pb collisions at the LHC , 2012, 1209.2001.
[27] S. Sapeta,et al. Gluon saturation in dijet production in p-Pb collisions at Large Hadron Collider , 2012, 1205.5035.
[28] C. Salgado,et al. AAMQS: A non-linear QCD analysis of new HERA data at small-x including heavy quarks , 2010, 1012.4408.
[29] J. Albacete,et al. Azimuthal correlations of forward dihadrons in d + Au collisions at RHIC in the color glass condensate. , 2010, Physical review letters.
[30] Z. A. Ibrahim,et al. Combined measurement and QCD analysis of the inclusive e±p scattering cross sections at HERA , 2009 .
[31] C. Marquet,et al. On multiple scatterings of mesons in hot and cold QCD matter , 2008, 0812.3878.
[32] I. Cherednikov,et al. Wilson lines and transverse-momentum dependent parton distribution functions: A renormalization-group analysis , 2008, 0802.2821.
[33] H. Kowalski,et al. Impact parameter dependent color glass condensate dipole model , 2007, 0712.2670.
[34] C. Marquet. Forward inclusive dijet production and azimuthal correlations in pA collisions , 2007, 0708.0231.
[35] J. Albacete,et al. Solving The High Energy Evolution Equation Including Running Coupling Corrections , 2007, 0704.0612.
[36] Peter Steinberg,et al. Glauber Modeling in High Energy Nuclear Collisions , 2007, nucl-ex/0701025.
[37] I. Balitsky. Quark contribution to the small-x evolution of color dipole , 2006, hep-ph/0609105.
[38] Y. Kovchegov,et al. Triumvirate of running couplings in small-x evolution , 2006, hep-ph/0609090.
[39] H. Kowalski,et al. Exclusive diffractive processes at HERA within the dipole picture , 2006, hep-ph/0606272.
[40] P. Mulders,et al. The construction of gauge-links in arbitrary hard processes , 2006, hep-ph/0601171.
[41] C. Salgado,et al. Nuclear size and rapidity dependence of the saturation scale from QCD evolution and experimental data , 2005, hep-ph/0502167.
[42] T. Ikeda,et al. Impact parameter dependence in the Balitsky–Kovchegov equation , 2004, hep-ph/0410345.
[43] E. Iancu. Basics of the Color Glass Condensate , 2003, hep-ph/0309044.
[44] H. Kowalski,et al. Impact parameter dipole saturation model , 2003, hep-ph/0304189.
[45] H. Kowalski,et al. A modification of the saturation model: DGLAP evolution , 2002, hep-ph/0203258.
[46] A. Leonidov,et al. Nonlinear gluon evolution in the color glass condensate: I , 2000, hep-ph/0109115.
[47] K. Golec-Biernat,et al. Saturation in diffractive deep inelastic scattering , 1999, hep-ph/9903358.
[48] K. Golec-Biernat,et al. Saturation effects in deep inelastic scattering at low Q**2 and its implications on diffraction , 1998, hep-ph/9807513.
[49] J. Jalilian-Marian,et al. The Wilson renormalization group for low x physics: Gluon evolution at finite parton density , 1997, hep-ph/9709432.
[50] A. Leonidov,et al. Wilson renormalization group for low x physics: Towards the high density regime , 1997, hep-ph/9706377.
[51] A. Leonidov,et al. The BFKL equation from the Wilson renormalization group , 1997, hep-ph/9701284.
[52] A. Mueller,et al. Single and double BFKL pomeron exchange and a dipole picture of high energy hard processes , 1994, hep-ph/9403256.
[53] A. Mueller. Soft gluons in the infinite momentum wave function and the BFKL pomeron , 1994 .
[54] R. Venugopalan,et al. Green's function in the color field of a large nucleus. , 1994, Physical review. D, Particles and fields.
[55] R. Venugopalan,et al. Gluon distribution functions for very large nuclei at small transverse momentum. , 1993, Physical review. D, Particles and fields.
[56] R. Venugopalan,et al. Computing quark and gluon distribution functions for very large nuclei. , 1993, Physical review. D, Particles and fields.
[57] N. Nikolaev,et al. Scaling properties of nuclear shadowing in deep inelastic scattering , 1991 .
[58] A. Mueller. Small-x behavior and parton saturation: A QCD model , 1990 .
[59] E. Levin,et al. Semihard processes in QCD , 1983 .
[60] E. Lobodzinska. Combination of Measurements of Inclusive Deep Inelastic ep Scattering Cross Sections and QCD Analysis of HERA Data , 2015 .